ACS Applied Polymer Materials · 2020 · 78 citations · 29 references
EngineeringElectrode-electrolyte InterfaceOrganic ElectronicsResponsive PolymersChemistryPolymersConducting PolymerCationic SpeciesDoped PedotHybrid MaterialsPolymer ChemistryBetter ConductivityMaterials ScienceElectroactive MaterialElectrical EngineeringOrganic SemiconductorStronger Coulombic InteractionsHigh DopingElectrical PropertyElectrochemistryPss FilmsElectronic MaterialsFlexible ElectronicsPolymer ScienceFunctional MaterialsElectrical Insulation
The electrical conductivity of poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate) (PEDOT:PSS) films with four salts that have various cations but the same bis(trifluoromethanesulfonyl)amide (TFSI) anion was studied. We found that doping salts of small-sized cations led to better conductivity because of the improved crystalline order and p-doped level of PEDOT, as revealed by the grazing-incidence wide-angle X-ray scattering (GIWAXS) and UV–vis spectrum. This phenomenon can be rationalized with the fact that small-sized cations with stronger Coulombic interactions can lead to high doping and rearrangement of PEDOT:PSS. These findings will help to develop recipes based on the PEDOT:PSS/salt composite toward the applications for printed flexible electronics.
29
A highly stretchable, transparent, and conductive polymer
Yue Wang, Chenxin Zhu, Raphael Pfattner et al. · Science Advances · 2017 · 1.4K citations · Full text
Highly Conductive PEDOT:PSS Nanofibrils Induced by Solution‐Processed Crystallization
Nara Kim, Seyoung Kee, Seoung Ho Lee et al. · Advanced Materials · 2013 · 1.1K citations
Olga Bubnova, Zia Ullah Khan, Hui Wang et al. · Nature Materials · 2013 · 834 citations · Full text
Kikuko Hayamizu, Yûichi Aihara, Shigemasa Arai et al. · The Journal of Physical Chemistry B · 1999 · 358 citations